Exploring how dysfunctional autophagy contributes to neurodegenerative disorders, metabolic diseases, and inflammatory conditions in animals.
Exploring how chemical biology is unlocking the secrets of ubiquitination, the cellular 'kiss of death' that regulates protein fate and function.
Discover how BRD7 protein orchestrates transcriptional repression to enable DNA repair at active gene regions, a breakthrough in genome maintenance research.
Exploring the synergistic combination of FLT3 inhibitors and BH3 mimetics in treating FLT3-ITD Acute Myeloid Leukemia
Discover how HIV's Vpr protein hijacks host epigenetics to reactivate latent viral reservoirs, with implications for cure strategies.
Exploring how F-box proteins drive cancer drug resistance through ubiquitin-proteasome system manipulation and potential therapeutic strategies.
Explore how the ubiquitin-proteasome system regulates ocular health and contributes to diseases like cataracts, glaucoma, and macular degeneration.
Exploring how mutant UBB+1 protein hijacks cellular cleanup mechanisms in neurodegenerative diseases by targeting deubiquitinating enzymes (DUBs)
Exploring how computational approaches transformed next-generation sequencing data into biological insights, with a focus on the Human Cell Atlas project.
Discover how PROTAC technology revolutionized our understanding of FAK protein's non-enzymatic functions in fertility and cancer research.